Infineon 60N03L MOSFET are available at Mouser Electronics. Mouser offers inventory, pricing, & datasheets for Infineon 60N03L MOSFET. 60N03 Transistor Datasheet, 60N03 Equivalent, PDF Data Sheets. MOSFET. Parameters and Characteristics. Electronic Component Catalog. 60N03L datasheet, 60N03L datasheets and manuals electornic semiconductor part. FQB60N03L, FQD60N03L, FQP60N03L, SDB60N03L and other pdf’s.
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While i now understand some crucial things about mosfets there is alot that i need to learn. Anyway i’m playing with the tlc 16ch 12bit led driver and i wanted to create a “animated” illumination for my room.
I already created some led drivers with transistorsbut also mosfets.
Not logic level mosfets. To do so i needed to build a complex “Saturation” circuit involving other 2 transistors per Mosfet.
In my local electronics shop they on ly have higher voltage mosfets. Also on the websites i normally buy parts. The salvaged mosfets are all N-type Logic level I can saturate them correctly, there is almost no voltage drop, they are really fast and they sink alot. Looking at the datasheet i could not find that big difference regarding each different mosfet. But they all have another number.
I tought the amperage 6003l some lower number mosfets have more amps.
The 60N03L is a 60 amp 30 volt device and the 55N03L is a 55 amp 30 volt device. I didn’t look up any more because a trend seemed to be occuring. Having now checked a few more data sheets it appears that the trend is bucked.
60N03H, 60N03L, 60N03P
The “03” part of the name consistently seems to imply that the voltage rating is 30V BUT, for instance, the IPB05N03 device is an 80 amp device that can handle peaks on period of 80 us up to A: Of note is the performance when the gate drive signal is 3. With a 2A load you would probably say the volt drop is about 0.
If we looked at the 07N03 device the power dissipation is about the same but with a 3. You could probably run either of these devices without a heatsink and expect the device not to rise much above 70 degC and possibly only 50 degC with some decent flowing air around the device. To confirm this check the data sheet for the temperature coefficient of the package – it should be stated as X degrees per watt.
You should also note that the 05No3L won’t be able to conduct anything more than 20A with a gate drive of 3. For instance, the 05N03L at 3v gate drive will probably drop about a volt at 20A and this means a power dissipation of 20 watts – definitely it will need a really good heat sink.
The circuit you have shown is likely to work with a load of no more than 2A without a heatsink but you need to check what the PWM frequency is and how fast the driver can charge up the capacitor inside the gate of the transistor. Typically the 05N03L has a 2.
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Clearly uit would be foolish to run this at a PWM frequency of 1MHz but kHz is looking OK but it’s worth examining what the dataasheet losses are likely to be: You could estimate that half way through switching the current is 1A with 6V across the FET – that’s a power of 6 watts and lasts for about 1us. If you had a 10 ohm resistor feeding the gate and the driver could push the current into the device’s gatethe charge time would be one tenth and switching losses at kHz would be about 0.
60N03 MOSFET Datasheet pdf – Equivalent. Cross Reference Search
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60N03L-10 Datasheet PDF